Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
HOFMEISTER, LAWRENCE D.
and
FELTON, LEWIS P.
1969.
Synthesis of waffle plates with multiple rib sizes.
AIAA Journal,
Vol. 7,
Issue. 12,
p.
2193.
MEYER, R. R.
1969.
Comments on "Buckling of Cylindrical Shells with Eccentric Spiral Type Stiffeners".
AIAA Journal,
Vol. 7,
Issue. 10,
p.
2047.
SOONG, TSAI-CHEN
1969.
Buckling of cylindrical shells with eccentric spiral-type stiffeners..
AIAA Journal,
Vol. 7,
Issue. 1,
p.
65.
SOONG, TSAI-CHEN
1969.
Reply by Author to R.R. Meyer.
AIAA Journal,
Vol. 7,
Issue. 10,
p.
2047.
PAPPAS, MICHAEL
and
AMBA-RAO, CHINTAKINDI L.
1970.
Structural synthesis of thin, cylindrical shells with spiral-type stiffeners.
AIAA Journal,
Vol. 8,
Issue. 8,
p.
1529.
HOFMEISTER, LAWRENCE D.
and
FELTON, LEWIS P.
1970.
Waffle Plates with Multiple Rib Sizes: Part I - Stability Analysis.
Journal of Spacecraft and Rockets,
Vol. 7,
Issue. 11,
p.
1322.
SOONG, TSAI-CHEN
1970.
Buckling of cylindrical shells with intermittently attached stiffeners.
AIAA Journal,
Vol. 8,
Issue. 5,
p.
928.
GRESZCZUK, L.
and
MILLER, R.
1970.
Advanced design concepts for buckling-critical composite shell structures.
GRESLCZUK, L. B.
and
MILLER, R. J.
1971.
Advanced Design Concepts for Bucklingcritical Cornnosite Shell Structures.
Journal of Aircraft,
Vol. 8,
Issue. 5,
p.
367.
BAIG, M. I.
and
YANG, T. Y.
1974.
Buckling analysis of orthogonally stiffened waffle cylinders.
Journal of Spacecraft and Rockets,
Vol. 11,
Issue. 12,
p.
832.
Baig, Mirza I.
and
Yang, T. Y.
1976.
Vibration of orthogonally stiffened waffle cylinders subjected to initial forces.
Journal of Spacecraft and Rockets,
Vol. 13,
Issue. 10,
p.
618.
Kunoo, Kazuo
and
Yang, T. Y.
1976.
Minimum weight design of an orthogonally stiffened waffle cylindrical shell with buckling constraint.
Journal of Spacecraft and Rockets,
Vol. 13,
Issue. 3,
p.
137.
Shao-Wen, Yen
1980.
Buckling of cylindrical shells with spiral stiffeners under uniform compression and torsion.
Computers & Structures,
Vol. 11,
Issue. 6,
p.
587.
Gürdal, Z.
and
Gendron, G.
1993.
Optimal design of geodesically stiffened composite cylindrical shells.
Composites Engineering,
Vol. 3,
Issue. 12,
p.
1131.
Nerubailo, B. V.
and
Mochalov, M. V.
2005.
Generalization of the Classical Formula of Stability of Cylindrical Shells to the Case of Spiral Stiffeners.
Journal of Engineering Physics and Thermophysics,
Vol. 78,
Issue. 4,
p.
835.
Nerubailo, B. V.
Zubkov, G. D.
and
Mochalov, M. V.
2006.
Stability of spirally stiffened shells under external pressure.
Journal of Engineering Physics and Thermophysics,
Vol. 79,
Issue. 1,
p.
202.
Hilburger, Mark
2012.
Developing the Next Generation Shell Buckling Design Factors and Technologies.
Nampy, Sreenivas N.
Smith, Edward
and
Bakis, Charles
2014.
Advanced Grid-Stiffened Composite Shells for Heavy-Lift Helicopter Blade Spars.
Zobaer Shah, Quazi Md.
Chowdhury, Mohammad Asaduzzaman
and
Kowser, Md. Arefin
2020.
Fretting & friction induced fatigue failure: damage criterion of polytetrafluoroethylene.
Heliyon,
Vol. 6,
Issue. 6,
p.
e04066.
Shah, Quazi Md. Zobaer
Kowser, Md. Arefin
Chowdhury, Mohammad Asaduzzaman
Chani, Muhammad Tariq Saeed
Alamry, Khalid A.
Hossain, Nayem
and
Rahman, Mohammed M.
2022.
Modeling Fracture Formation, Behavior and Mechanics of Polymeric Materials: A Biomedical Implant Perspective.
Journal of Composites Science,
Vol. 6,
Issue. 1,
p.
31.